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Published on: September 14, 2011
iniBAC induction Is Vitamin B12- and MutAB-dependent in Mycobacterium marinum
Maikel Boot1, Marion Sparrius1, Kin Ki Jim1
1From the Department of Medical Microbiology and Infection Control, VU University Medical Center, De Boelelaan 1108, 1081 HZ, Amsterdam, The Netherlands.
Abstract:
Tuberculosis can be treated with a 6-month regimen of antibiotics. Although the targets of most of the first-line antibiotics have been identified, less research has focused on the intrabacterial stress responses that follow upon treatment with antibiotics. Studying the roles of these stress genes may lead to the identification of crucial stress-coping mechanisms that can provide additional drug targets to increase treatment efficacy. A three-gene operon with unknown function that is strongly up-regulated upon treatment with isoniazid and ethambutol is the iniBAC operon. We have reproduced these findings and show that iniBAC genes are also induced in infected host cells, although with higher variability. Next, we set out to elucidate the genetic network that results in iniBAC induction in Mycobacterium marinum By transposon mutagenesis, we identified that the operon is highly induced by mutations in genes encoding enzymes of the vitamin B12 biosynthesis pathway and the vitamin B12-dependent methylmalonyl-CoA-mutase MutAB. Lipid analysis showed that a mutA::tn mutant has decreased phthiocerol dimycocerosates levels, suggesting a link between iniBAC induction and the production of methyl-branched lipids. Moreover, a similar screen in Mycobacterium bovis BCG identified that phthiocerol dimycocerosate biosynthesis mutants cause the up-regulation of iniBAC genes. Based on these data, we propose that iniBAC is induced in response to mutations that cause defects in the biosynthesis of methyl-branched lipids. The resulting metabolic stress caused by these mutations or caused by ethambutol or isoniazid treatment may be relieved by iniBAC to increase the chance of bacterial survival.
Insights
The iniBAC operon responds to antibiotic stress in tuberculosis bacteria. This response is linked to defects in methyl-branched lipid production, suggesting new drug targets for improved tuberculosis treatment.
Area of Science:
- Microbiology
- Molecular Biology
- Tuberculosis Research
Background:
- Tuberculosis treatment relies on antibiotics, but intrabacterial stress responses are understudied.
- The iniBAC operon is upregulated by isoniazid and ethambutol, but its function and regulation are unclear.
Purpose of the Study:
- To elucidate the genetic network regulating iniBAC operon induction in Mycobacterium.
- To investigate the link between iniBAC induction and bacterial stress responses.
Main Methods:
- Reproduced iniBAC gene induction findings.
- Utilized transposon mutagenesis in Mycobacterium marinum and Mycobacterium bovis BCG.
- Performed lipid analysis to assess methyl-branched lipid levels.
Main Results:
- Mutations in vitamin B12 biosynthesis and MutAB pathways strongly induced iniBAC.
- Mutations affecting phthiocerol dimycocerosate biosynthesis also upregulated iniBAC.
- iniBAC induction is linked to defects in methyl-branched lipid production.
Conclusions:
- The iniBAC operon is induced by metabolic stress from defects in methyl-branched lipid biosynthesis.
- iniBAC may help bacteria survive antibiotic-induced stress, offering potential new drug targets.

